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首页> 外文期刊>Journal of the Chemical Society, Perkin Transactions 1 >Tandem radical cyclisation of enamides mediated by tin hydride; pyrrolizidinone or indolizidinone ring formation
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Tandem radical cyclisation of enamides mediated by tin hydride; pyrrolizidinone or indolizidinone ring formation

机译:氢化锡介导的酰胺的串联自由基环化;吡咯烷酮或吲哚嗪酮环的形成

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摘要

The tin hydride-mediated cyclisation of a variety of enamides under mild, neutral reaction conditions has been investigated. Enamides derived from pyruvate were reacted with R_3SnH-AIBN to generate #alpha#-carbamoylmethyl radicals which underwent 5-endo cyclisation to give cyclic #alpha#-amino ester radicals. Subsequent 6-endo or 5-exo cyclisation was observed leading to the formation of indolizidinone and pyrrolizidinone products respectively. The reaction pathway was governed by the alkene substitution. If an electron-rich double bond was used the cyclisation was under thermodynamic control and a 6-membered ring was observed. Five-membered rings were formed on reaction of the #alpha#-amino ester radical with unsaturated esters or ketones. The ester or ketone functional group can stabilise the radical produced on 5-exo cyclisation and pyrrolizidinones could be prepared in up to 66% yield. Stannane by-products were also isolated from some reactions. These were thought to be derived from a competitive Michael-type addition of the tin radical to the enamide double bond.
机译:在温和的中性反应条件下,研究了氢化锡介导的各种酰胺的环化反应。使衍生自丙酮酸的酰胺与R_3SnH-AIBN反应以产生#α#-氨基甲酰基甲基,将其进行5-内环化以产生环状的#α#-氨基酯基。观察到随后的6-endo或5-exo环化分别导致吲哚嗪酮和吡咯烷酮产品的形成。反应途径由烯烃取代决定。如果使用富含电子的双键,则在热力学控制下进行环化,并观察到6元环。在α-氨基酯基与不饱和酯或酮反应时形成五元环。酯或酮官能团可以稳定在5-exo环化反应中产生的自由基,并且吡咯烷二酮可以高达66%的收率制备。还从某些反应中分离出了锡烷副产物。这些被认为是由于锡基与烯酰胺双键的竞争性迈克尔型加成而得。

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